Abstract
A piezoelectric buoy energy harvester made of composite structures including a vibrator, slider, and heaving buoy is developed to harness energy from ocean waves. The vibrator is made of a group of tapered piezoelectric coupled cantilevers with a magnetic brick of the same size mounted on the free end. All tapered cantilevers are fixed linearly on the inner wall of a box in horizontal and longitudinal directions. A corresponding mathematical model for the buoy harvester is developed by a governing differential equation with variable coefficients. The influences of some practical considerations on the RMS (root mean square) of the generated electric power are discussed. The results show that the RMS can reach up to 70.8 KW for a composite piezoelectric buoy harvester with a length, width, and height of 1.3 m, 1.1 m, and 3.1 m, and a wave speed of 1 m/s. This research provides a more efficient and practical method for harvesting ocean wave energy with composite piezoelectric structures.
| Original language | English |
|---|---|
| Pages (from-to) | 447-454 |
| Journal | Composite Structures |
| Volume | 178 |
| Online published | 15 Jul 2017 |
| DOIs | |
| Publication status | Published - 15 Oct 2017 |
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 7 Affordable and Clean Energy
Research Keywords
- Finite difference method
- Magnetic excitation force
- Piezoelectric buoy energy harvester
- Tapered cantilever
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